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Performance Analysis of a 5G Energy-Constrained Downlink Relaying Network With Non-Orthogonal Multiple Access

机译:具有非正交多址访问的5G能耗受限的下行中继网络的性能分析

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In this paper, a 5G energy-constrained network is considered, where a non-orthogonal multiple access (NOMA) scheme is applied at the multiple users. The outage probability and the ergodic rate are studied as two benchmarks to evaluate the system performance. First, a closed-form expression for the exact outage probability is derived. A lower bound of the outage probability is obtained and shown to predict well the system performance. In addition, the outage probability in the high signal-to-interference-plus-noise ratio (SINR) regime is studied to assess its upper limit while achieving the diversity order. Second, a closed-form expression for the upper bound of the ergodic rate is obtained. Then the ergodic rate in the high SINR regime is also analyzed. Finally, numerous computer simulations are performed to corroborate the superior performance of NOMA relative to orthogonal multiple access schemes and the validity of the derived analytical results.
机译:本文考虑了5G能量受限的网络,其中在多个用户处应用了非正交多址(NOMA)方案。中断概率和遍历率被作为评估系统性能的两个基准。首先,导出精确停机概率的闭式表达式。获得中断概率的下限,并可以很好地预测系统性能。另外,研究了高信噪比(SINR)方案中的中断概率,以评估其上限,同时实现分集阶数。第二,获得遍历率上限的封闭形式的表达式。然后,还分析了高SINR模式下的遍历率。最后,进行了许多计算机模拟,以证实NOMA相对于正交多址访问方案的优越性能以及所得出的分析结果的有效性。

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